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Independent Chiral Control in Theory-Space Models:A Rank-Preserving Framework and Its Application to Neutrino Mass Generation

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arxiv 2409.09033 v3 pith:YVGW4MHV submitted 2024-07-19 math.RA hep-phhep-thquant-ph

classification math.RAhep-phhep-thquant-ph
keywords theory-spacemassmodelsapplicationcontrolframeworkgenerationindependent
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abstract

We develop a general framework of rank-preserving, element-wise matrix transformations for engineering fermion mass hierarchies in theory-space constructions. We prove that preservation of massless modes requires the transformation function to be separable, $g_f(i,j)=g^{(L)}_f(i)g^{(R)}_f(j)$, which in turn enables independent control of left- and right-chiral zero-mode profiles directly at the level of the theory-space mass matrix. This formalism unifies and extends the clockwork mechanism, permits controlled deformation of Kaluza--Klein spectra, and enhances hierarchy generation in GIM-like fine-cancellation scenarios. As a concrete application, we show that in theory-space models for neutrino masses, suitable transformations allow sub-eV light neutrinos to arise from TeV-scale new physics with only $\mathcal{O}(40)$ additional fermionic sites, while remaining consistent with charged-lepton flavor-violation bounds. In contrast, the corresponding untransformed models asymptote at the MeV scale and cannot access the phenomenologically required regime without extreme field multiplicities or hierarchical parameters.

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  1. Flavour from Fractal Mass Chains

    hep-ph 2025-09 reject novelty 5.0 of 10

    A fermion mass-matrix construction on a Sierpinski-triangle lattice yields three zero modes that the authors identify with the three Standard Model generations, and the framework can accommodate observed lepton data b...

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